Understanding the dynamics of TKI-induced changes in the tumor immune microenvironment for improved therapeutic effect

Author:

Lu Conghua,Gao Ziyuan,Wu Di,Zheng Jie,Hu Chen,Huang Daijuan,He Chao,Liu Yihui,Lin Caiyu,Peng Tao,Dou Yuanyao,Zhang Yimin,Sun Fenfen,Jiang Weiling,Yin Guoqing,Han Rui,He YongORCID

Abstract

BackgroundThe dynamic interplay between tyrosine kinase inhibitors (TKIs) and the tumor immune microenvironment (TME) plays a crucial role in the therapeutic trajectory of non-small cell lung cancer (NSCLC). Understanding the functional dynamics and resistance mechanisms of TKIs is essential for advancing the treatment of NSCLC.MethodsThis study assessed the effects of short-term and long-term TKI treatments on the TME in NSCLC, particularly targeting epidermal growth factor receptor (EGFR) and anaplastic lymphoma kinase (ALK) mutations. We analyzed changes in immune cell composition, cytokine profiles, and key proteins involved in immune evasion, such as laminin subunit γ−2 (LAMC2). We also explored the use of aspirin as an adjunct therapy to modulate the TME and counteract TKI resistance.ResultsShort-term TKI treatment enhanced T cell-mediated tumor clearance, reduced immunosuppressive M2 macrophage infiltration, and downregulated LAMC2 expression. Conversely, long-term TKI treatment fostered an immunosuppressive TME, contributing to drug resistance and promoting immune escape. Differential responses were observed among various oncogenic mutations, with ALK-targeted therapies eliciting a stronger antitumor immune response compared with EGFR-targeted therapies. Notably, we found that aspirin has potential in overcoming TKI resistance by modulating the TME and enhancing T cell-mediated tumor clearance.ConclusionsThese findings offer new insights into the dynamics of TKI-induced changes in the TME, improving our understanding of NSCLC challenges. The study underscores the critical role of the TME in TKI resistance and suggests that adjunct therapies, like aspirin, may provide new strategies to enhance TKI efficacy and overcome resistance.

Funder

Chongqing Technology Innovation and Application Development Special Key Project

Chongqing Science and Technology Commission

National Natural Science Foundation of China

Clinical Medical Technology Innovation Ability Training Program

Chongqing Graduate Scientific Research Innovation Project

Publisher

BMJ

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